结直肠癌
核梭杆菌
免疫系统
生物
癌症研究
失调
癌变
癸酸
趋化性
免疫学
转录组
先天免疫系统
白细胞介素8
基因敲除
KLF4公司
发病机制
肿瘤微环境
微生物群
炎症性肠病
结肠炎
CXCR4型
癌症
转录因子
大肠癌小鼠模型的建立
炎症
作者
Xinmiao Jia,Lingjuan Jiang,Yiyi Gong,Xi Chu,Wei Yu,J Q Du,Junhua Zhang,Xuesong Shang,P Wang,Yi-Xiang Wang,Yaqian Li,Zi Wang,Runing Zhou,Zongping Li,Ying Zhu,Bin Wu,Li J,Qiwen Yang
标识
DOI:10.1038/s41467-026-74591-y
摘要
Gut microbiota dysbiosis and immune dysregulation are closely associated with the development of colorectal cancer. Identifying the mechanistic links among specific microbial species, metabolites, and immune responses is crucial for uncovering novel insights into its pathogenesis. Here we show, through metagenomic and metabolomic analyses of clinical cohorts, that Fusobacterium periodonticum is significantly enriched in colorectal cancer patients and strongly correlated with elevated decanoic acid levels. Single-cell transcriptomic results further reveal tissue-specific neutrophil enrichment in colorectal cancer tissues, characterized by high CXCL8 expression and activation of neutrophil-related immune pathways. Cellular experiments demonstrate that decanoic acid induces late apoptosis/necrosis of neutrophils, enhances their chemotaxis through a pertussis toxin-sensitive G-protein-dependent mechanism, and upregulates genes involved in leukocyte migration and tumorigenesis. Mouse models further confirm that F. periodonticum colonization increases intestinal dysplasia and decanoic acid levels, and that decanoic acid intervention promotes tumor progression by facilitating neutrophil infiltration and modulating the local immune microenvironment. Our study reveals an important role of F. periodonticum in colorectal tumorigenesis via decanoic acid-medicated neutrophil chemotaxis, providing mechanistic insights into the pathogenesis of colorectal cancer.
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